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A novel battery-supercapacitor system with extraordinarily high performance

机译:高性能的新型电池超级电容器系统

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In this paper, a battery-supercapacitor system is developed and its electrochemical performance is investigated. The battery-supercapacitor system is composed of a separated LiFePO4/activated carbon cathode and a separated Li4Ti5O12/activated carbon anode onto both sides of a piece of aluminum foil. We demonstrated the superior electrochemical performance of this battery-supercapacitor system, such as its energy density of 4.9-48.5 Wh/kg, power density of 167.7-5243.2 W/kg, rate capability of 73.9% at a current density of 20 A and cycle life (91.5% after 1800 cycles) which outperforms that of a hybrid supercapacitor. This can be explained by the synergistic effect of a Faradaic and non-Faradaic system in a single cell. The results clearly show that the battery-supercapacitor system, including a LiFePO4 cathode/Li4Ti5O12 anode and an activated carbon anode/activated carbon cathode, has great potential for use in advanced energy storage devices. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文开发了一种电池-超级电容器系统,并研究了其电化学性能。电池-超级电容器系统由一块铝箔两面的分离的LiFePO4 /活性炭阴极和分离的Li4Ti5O12 /活性炭阳极组成。我们展示了这种电池-超级电容器系统的出色电化学性能,例如其能量密度为4.9-48.5 Wh / kg,功率密度为167.7-5243.2 W / kg,在20 A的电流密度下具有73.9%的速率能力和循环寿命(1800次循环后为91.5%),优于混合超级电容器。这可以通过法拉第系统和非法拉第系统在单个单元格中的协同效应来解释。结果清楚地表明,包括LiFePO4阴极/ Li4Ti5O12阳极和活性炭阳极/活性炭阴极的电池-超级电容器系统在先进的储能设备中具有巨大的潜力。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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